PubMed Health⌕ Search

Biomedical subjects

Gen Yamada

Publications and source records attributed to Gen Yamada.

At least 19 recordsLinked to original sources

Molecular analysis of coordinated bladder and urogenital organ formation by Hedgehog signaling.

The urogenital and reproductive organs, including the external genitalia, bladder and urethra, develop as anatomically aligned organs. Descriptive and experimental embryology suggest that the cloaca, and its derivative, the urogenital sinus, contribute to the formation of these organs. However, it is unknown how the primary tissue lineages in, and adjacent to, the cloaca give rise to the above organs, nor is bladder formation understood. While it is known that sonic hedgehog (Shh) is expressed by the cloacal epithelia, the developmental programs that regulate and coordinate the formation of the urogenital and reproductive organs have not been elucidated. Here we report that Shh mutant embryos display hypoplasia of external genitalia, internal urethra (pelvic urethra) and bladder. The importance of Shh signaling in the development of bladder and external genitalia was confirmed by analyzing a variety of mutant mouse lines with defective hedgehog signaling. By genetically labeling hedgehog-responding tissue lineages adjacent to the cloaca and urogenital sinus, we defined the contribution of these tissues to the bladder and external genitalia. We discovered that development of smooth muscle myosin-positive embryonic bladder mesenchyme requires Shh signaling, and that the bladder mesenchyme and dorsal (upper) external genitalia derive from Shh-responsive peri-cloacal mesenchyme. Thus, the mesenchymal precursors for multiple urogenital structures derive from peri-cloacal mesenchyme and the coordination of urogenital organ formation from these precursors is orchestrated by Shh signals.

Animals↗

CXorf6 is a causative gene for hypospadias.

46,XY disorders of sex development (DSD) refer to a wide range of abnormal genitalia, including hypospadias, which affects approximately 0.5% of male newborns. We identified three different nonsense mutations of CXorf6 in individuals with hypospadias and found that its mouse homolog was specifically expressed in fetal Sertoli and Leydig cells around the critical period for sex development. These data imply that CXorf6 is a causative gene for hypospadias.

Animals↗

Induced expression of cathepsins and cystatin C in a murine model of demyelination.

While proteolytic enzymes are involved in the pathogenesis of multiple sclerosis (MS), the involvement of cathepsins has not been characterized in detail. To better understand the role of cathepsins, cDNA microarray analysis was used to study the brains of proteolipid protein transgenic (plp ( tg ) /-) mice, an animal model that closely mimics the failure of remyelination in MS. Analysis revealed upregulated expression of cathepsins L, H and B and their inhibitor, cystatin C. By in situ hybridization, the induction of cathepsins was primarily limited to microglia/macrophages of the white matter, with continuous expression from 2 to 8 months of age. Elevated protein level of cathepsins was confirmed at 4 months of age. In contrast, elevated expression of cystatin C was found in astrocytes. The ratio of microglia/macrophages to astrocytes increased throughout the course of demyelination, suggesting that the ratio of secreted cathepsins to cystatin C increased during that period. We propose that in MS, remyelination may be impaired by increasing activity of cathepsins inadequately controlled by cystatin C.

Aging↗

Cloning and expression analysis of androgen receptor gene in chicken embryogenesis.

We cloned a full-length androgen receptor (AR) cDNA from chicken (Gallus gallus) gonads. The cDNA sequence has an open reading frame of 2109 bp encoding 703 amino acids. The chicken AR (cAR) shares high homology with ARs from other species in its amino acid sequences, in particular DNA binding domain (DBD) and ligand binding domain (LBD). RT-PCR analysis revealed that cAR mRNA is expressed in several embryonic tissues of both sexes, and relatively higher expression was observed in left ovary compared with testis. The immunoreactive signal of AR was co-localized within the ovarian cell nucleus, while such nuclear localization was not detected in those of testis. To get insight on the possible role of androgen-AR signaling during gonadal development, non-steroidal AR antagonist, flutamide, was administrated in ovo. The treatment induced the disorganization of sex cords in ovarian cortex at day 12 of incubation. The effect was restored by testosterone co-treatment, implying the possibility that AR mediated signaling may be involved in ovarian morphogenesis. Furthermore, co-treatment of flutamide with estradiol-17beta (E2) also restored the phenotype, suggesting androgen-AR signaling might activate aromatase expression that is necessary for estrogen synthesis. These findings suggest androgen-AR signaling might contribute to chicken embryonic ovarian development.

Amino Acid Sequence↗

Silicon intake to vertebral columns of mice after dietary supply.

Vertebral columns were dissected and analyzed after birth with oral administration of silicon for 4 wk and for 8 wk. The silicon level was lower (20 microg/g) at the beginning. It remains unchanged after 4 wk and then increases twice as much as that for those mice bred for 8 wk than those bred for 4 wk. This increase depends remarkably on the mass ratio of Si/Ca (M/M). The ratio increases to three times higher than that of the control at the beginning of the experiments (5 wk after birth). Although the S and P contents appeared to be lower, these increased when Si was administered in combination with phosphopeptide. Other elements, such as Ca, Mg, Fe, and Zn, appeared to be unchanged as the weeks proceeded. These findings seem to support a proposal that silicon is necessary for the growth of backbones in mice.

Administration, Oral↗

Trace elements in human tendons and ligaments.

Tendons and ligaments are key structures in promoting joint movement and maintaining joint stability. Although numerous reviews have detailed their structure, molecular composition, and biomechanical properties, far less attention has been paid to their content of trace elements. Tendons and ligaments are generally rich in calcium, sulfur, and phosphorus, although there are intriguing differences between one tendon/ligament and another. Furthermore, there can be significant regional variations that correlate with the presence or absence of fibrocartilage in the "wrap-around" regions of tendons or ligaments, where they change direction and press against bone. Here, their sulfate and calcium contents are particularly high. This is undoubtedly associated with the high levels of proteoglycans that are found in these cartilaginous tissues and the occasional presence of sesamoid bones within them.

Humans↗

[In vivo transduction of EGFP into female mouse reproductive system by electroporation and microbubble-enhanced sonoporation].

In the present study, the efficiency of in vivo transduction of EGFP plasmid DNA into adult female mouse reproductive system by means of electroporation and microbubble-enhanced sonoporation are discussed. In the first experiment,EGFP plasmid DNA was injected into the ovary and following electroporation (square electric pulses were applied five times at 60V with a constant time of 20ms). Green fluorescence was detected 10h after transduction. In the second experiment, plasmid DNA was mixed with the microbubble at different ratio and injected into the uterus and the ovary separately. The tissues were exposed to different combined ultrasound parameters immediately after injection. We found that the suitable parameter was 2 w/cm2 intensity, 20% duty cycle and 5min. Under this condition, green fluorescence was expressed in the uterus endometrium and ovarian cortex 12 h post-sonoporation and the expression lasted up to 5 days.

Animals↗

TAK1, but not TAB1 or TAB2, plays an essential role in multiple signaling pathways in vivo.

TGF-beta-activated kinase 1 (TAK1), a member of the MAPKKK family, is thought to be a key modulator of the inducible transcription factors NF-kappaB and AP-1 and, therefore, plays a crucial role in regulating the genes that mediate inflammation. Although in vitro biochemical studies have revealed the existence of a TAK1 complex, which includes TAK1 and the adapter proteins TAB1 and TAB2, it remains unclear which members of this complex are essential for signaling. To analyze the function of TAK1 in vivo, we have deleted the Tak1 gene in mice, with the resulting phenotype being early embryonic lethality. Using embryonic fibroblasts lacking TAK1, TAB1, or TAB2, we have found that TNFR1, IL-1R, TLR3, and TLR4-mediated NF-kappaB and AP-1 activation are severely impaired in Tak1(m/m) cells, but they are normal in Tab1(-/-) and Tab2(-/-) cells. In addition, Tak1(m/m) cells are highly sensitive to TNF-induced apoptosis. TAK1 mediates IKK activation in TNF-alpha and IL-1 signaling pathways, where it functions downstream of RIP1-TRAF2 and MyD88-IRAK1-TRAF6, respectively. However, TAK1 is not required for NF-kappaB activation through the alternative pathway following LT-beta signaling. In the TGF-beta signaling pathway, TAK1 deletion leads to impaired NF-kappaB and c-Jun N-terminal kinase (JNK) activation without impacting Smad2 activation or TGF-beta-induced gene expression. Therefore, our studies suggests that TAK1 acts as an upstream activating kinase for IKKbeta and JNK, but not IKKalpha, revealing an unexpectedly specific role of TAK1 in inflammatory signaling pathways.

Adaptor Proteins, Signal Transducing↗

Clinical significance of vascular endothelial growth factor-C and vascular endothelial growth factor receptor 3 in patients with T1 lung adenocarcinoma.

BACKGROUND: Vascular endothelial growth factor-C (VEGF-C) plays an important role in lymphangiogenesis and activates VEGF receptor-3 (VEGFR-3). Lymphatic spread is an important prognostic factor in patients with lung adenocarcinoma. The aim of the current study was to determine whether the expression of VEGF-C and VEGFR-3 correlates with clinicopathologic factors and prognosis in patients with TNM classification T1 lung adenocarcinoma. METHODS: The authors conducted a retrospective review of 129 consecutive patients who underwent complete resection for T1 lung adenocarcinoma. Immunohistochemical staining for VEGF-C, VEGF, VEGFR-3, CD34 (microvessels), tryptase (mast cells), and CD68 (macrophages) was performed to statistically analyze clinicopathologic implications of VEGF-C and VEGFR-3 status. RESULTS: Of 129 patients with T1 lung adenocarcinoma, 56 (43.3%) patients were positive for tumor-cell VEGF-C and 73 (56.6%) and 69 (53.5%) patients were positive for tumor-cell and endothelial-cell VEGFR-3, respectively. Patients with positive staining for tumor-cell VEGF-C showed significantly less favorable survival rates than patients with negative staining (P = 0.031). The survival rates of patients with positive staining for tumor-cell and endothelial-cell VEGFR-3 were significantly lower than those with negative staining (P = 0.0034 and P = 0.0020, respectively). Patients with positive staining for both tumor-cell VEGF-C and endothelial-cell VEGFR-3 exhibited the most unfavorable prognoses. Multivariate analysis demonstrated that coexpression of tumor-cell VEGF-C and endothelial-cell VEGFR-3 was an independent negative prognostic factor (P = 0.0129) as well as N factor (P = 0.0020). CONCLUSIONS: VEGF-C and VEGFR-3 status may be indicative of survival rates for patients with T1 lung adenocarcinoma.

Adenocarcinoma↗

Circulating interleukin-18 and osteopontin are useful to evaluate disease activity in patients with tuberculosis.

BACKGROUND: T helper type 1 (Th1) responses have been implicated in the protective immunity, pathophysiology and development of tuberculosis. However, it is still unclear which molecule(s) reflect disease activity in patients with tuberculosis. METHODS: By specific enzyme immunoassays, circulating interferon-gamma. (IFN-gamma), interleukin-12 (IL-12), IL-18 and osteopontin (OPN) were measured in 47 patients with pulmonary tuberculosis and 7 patients with miliary tuberculosis before anti-tuberculosis therapy, and also measured in 19 patients with tuberculosis before and after anti-tuberculosis therapy. RESULTS: Circulating IFN-gamma, IL-18 and OPN levels were significantly higher in patients with pulmonary tuberculosis than in healthy controls, while there was no significant difference in levels of circulating IL-12 between tuberculosis patients and controls. Circulating IFN-gamma, IL-12, IL-18 and OPN paralleled the extent of lung lesions, and circulating IFN-gamma, IL-18 and OPN paralleled the magnitude of fever in patients with pulmonary tuberculosis. Patients with miliary tuberculosis had extremely high levels of circulating OPN, IFN-gamma and IL-18. Circulating IL-18 and OPN were significantly decreased with anti-tuberculosis therapy, whereas circulating IL-12 and IFN-gamma were not. CONCLUSIONS: Among Th1 response associated molecules, circulating levels of IL-18 and OPN, but not IFN-gamma or IL-12, reflect disease activity in patients with tuberculosis.

Adult↗

Development of autoimmunity against transcriptionally unrepressed target antigen in the thymus of Aire-deficient mice.

Autoimmune regulator (AIRE) gene mutation is responsible for the development of organ-specific autoimmune disease with monogenic autosomal recessive inheritance. Although Aire has been considered to regulate the elimination of autoreactive T cells through transcriptional control of tissue-specific Ags in thymic epithelial cells, other mechanisms of AIRE-dependent tolerance remain to be investigated. We have established Aire-deficient mice and examined the mechanisms underlying the breakdown of self-tolerance. The production and/or function of immunoregulatory T cells were retained in the Aire-deficient mice. The mice developed Sjogren's syndrome-like pathologic changes in the exocrine organs, and this was associated with autoimmunity against a ubiquitous protein, alpha-fodrin. Remarkably, transcriptional expression of alpha-fodrin was retained in the Aire-deficient thymus. These results suggest that Aire regulates the survival of autoreactive T cells beyond transcriptional control of self-protein expression in the thymus, at least against this ubiquitous protein. Rather, Aire may regulate the processing and/or presentation of self-proteins so that the maturing T cells can recognize the self-Ags in a form capable of efficiently triggering autoreactive T cells. With the use of inbred Aire-deficient mouse strains, we also demonstrate the presence of some additional factor(s) that determine the target-organ specificity of the autoimmune disease caused by Aire deficiency.

Animals↗

The cellular and molecular etiology of the cleft secondary palate in Fgf10 mutant mice.

Mammalian palatogenesis depends on interactions between the stomodium-derived epithelium and the cranial neural crest-derived ectomesenchyme. Fibroblast growth factor 10 (FGF10) is a mesenchymal signaling factor that guides the morphogenesis of multiple organs through tissue-tissue interactions. This is consistent with widespread agenesis and dysgenesis of organs observed in Fgf10-/- mice. In this study, we report the presence of a wide-open cleft secondary palate in Fgf10 homozygous null mutant mice. Fgf10 transcripts were detected in the palatal mesenchyme from E11.5 to E13.5 during normal palatogenesis and were enriched in the anterior and middle portions of the palatal shelves. In Fgf10-/- embryos, histological analyses revealed aberrant adhesion of the palatal shelves with the tongue in the anterior and fusion with the mandible in the middle and posterior beginning at E13.5, which could prevent normal elevation of the palatal shelves leading to a cleft palate. TUNEL and BrdU assays demonstrated significant levels of apoptosis in the medial edge epithelium (MEE) but unaltered cell proliferation in mutant palatal shelves. At the molecular level, we show that Fgf10 is epistatic to Jagged2 and Tgfbeta3 in the developing palate. Notably, the expression of Jagged2 is downregulated throughout the palate epithelium in Fgf10 mutants while Tgfbeta3 is misexpressed in the palatal epithelium at the oral side. Our results demonstrate that mesenchymally expressed Fgf10 is necessary for the survival of MEE cells and for the normal expression of Jagged2 and Tgfbeta3 in the palatal epithelium during mammalian palatogenesis.

Animals↗

Ventral abdominal wall dysmorphogenesis of Msx1/Msx2 double-mutant mice.

Msx1 and Msx2 genes encode the homeodomain transcription factors. Several gene knockout mice and expression studies suggest that they possess functionally redundant roles in embryogenesis. In this study, we revealed that Msx1 and Msx2 were expressed during ventral body wall formation in an overlapping manner. Msx1/Msx2 double-mutant mice displayed embryonic abdominal wall defects with disorganized muscle layers and connective tissues. These findings indicate that Msx1 and Msx2 play roles in concert during embryonic ventral abdominal wall formation.

Abdominal Muscles↗

Napsin A is useful to distinguish primary lung adenocarcinoma from adenocarcinomas of other organs.

The aim of the present study was to compare the usefulness of the peripheral airway cell markers, naspin A and surfactant protein A (SP-A), for distinguishing primary lung adenocarcinoma from adenocarcinomas of other organs in various clinical conditions. Immunohistochemical expression of napsin A and SP-A was analyzed at primary sites of 120 lung carcinomas and 40 adenocarcinomas of other organs, at lung metastatic sites of 32 adenocarcinomas of other organs, and in metastatic lymph nodes of 21 lung adenocarcinomas and 45 adenocarcinomas of other organs. Napsin A and SP-A expressions were compared between primary and recurrent sites in 8 lung adenocarcinomas. Napsin A and SP-A expressions were noted in 84.3% and 53.0% of primary sites of 83 lung adenocarcinomas, respectively, but neither napsin A nor SP-A was expressed at primary sites of other histological types of lung carcinomas or at primary or metastatic sites of adenocarcinomas of other organs. In lung adenocarcinomas, napsin A and SP-A were expressed in metastatic lymph nodes in 81.0% and 19.0%, respectively, and at recurrent sites in 87.5% and 37.5%, respectively. Napsin A is superior to SP-A for distinguishing primary lung adenocarcinoma from adenocarcinomas of other organs at primary, metastatic, and recurrent sites.

Adenocarcinoma↗

Reproductive/urogenital organ development and molecular genetic cascades: glamorous developmental processes of bodies.

At the beginning of the 21st century, developmental biologists together with medical researchers in a wide range of fields are witnessing rapid progress in molecular developmental biology. For example, conditional gene knockout systems are being designed to tackle questions about organogenesis and body plan formation in experimental mouse models and experimental designs include several compound mutant analyses and genome modification strategies. On the other hand, several fields remain relatively unexplored. Molecular mechanisms of sex differentiation are one of the unexplored huge area. Unanswered questions include the molecular genetic cascade of gonad formation, reproductive organ formation, uterus, external genitalia and mammary gland formation, and also the molecular mechanisms of signal transduction, and gene regulation by nuclear hormone receptors. This special thematic review series entitled, "Reproductive/urogenital organ development and molecular genetic cascades: glamorous developmental processes of bodies," covers such a wide range of topics. For this special issue, I have asked active researchers to contribute reviews of these topics which I believe will be useful not only for molecular developmental biologists, but also for researchers in biochemistry and cell biology. It will be my great pleasure if this special thematic issue encourages scientists to study this exciting research field.

Animals↗

Hepatocyte growth factor activator inhibitor type 1 (HAI-1) is required for branching morphogenesis in the chorioallantoic placenta.

Hepatocyte growth factor activator inhibitor type 1 (HAI-1) is a membrane-associated Kunitz-type serine proteinase inhibitor that was initially identified as a potent inhibitor of hepatocyte growth factor activator. HAI-1 is also a cognate inhibitor of matriptase, a membrane-associated serine proteinase. HAI-1 is expressed predominantly in epithelial cells in the human body. Its mRNA is also abundant in human placenta, with HAI-1 specifically expressed by villous cytotrophoblasts. In order to address the precise roles of HAI-1 in vivo, we generated HAI-1 mutant mice by homozygous recombination. Heterozygous HAI-1+/- mice underwent normal organ development. However, homozygous HAI-1-/- mice experienced embryonic lethality which became evident at embryonic day 10.5 postcoitum (E10.5). As early as E9.5, HAI-1-/- embryos showed growth retardation that did not reflect impaired cell proliferation but resulted instead from failed placental development and function. Histological analysis revealed severely impaired formation of the labyrinth layer, in contrast all other placental layers, such as the spongiotrophoblast layer and giant cell layer, which were formed. Our results indicate that mouse HAI-1 is essential for branching morphogenesis in the chorioallantoic placenta and lack of HAI-1 function may result in placental failure.

Animals↗